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authorDamien Miller <djm@mindrot.org>2010-08-31 14:41:14 +0200
committerDamien Miller <djm@mindrot.org>2010-08-31 14:41:14 +0200
commiteb8b60e320cdade9f4c07e2abacfb92c52e01348 (patch)
tree4e5bc25790566402e5b7ae00cefd2c57e867ef09 /ssh.c
parent - djm@cvs.openbsd.org 2010/08/31 09:58:37 (diff)
downloadopenssh-eb8b60e320cdade9f4c07e2abacfb92c52e01348.tar.xz
openssh-eb8b60e320cdade9f4c07e2abacfb92c52e01348.zip
- djm@cvs.openbsd.org 2010/08/31 11:54:45
[PROTOCOL PROTOCOL.agent PROTOCOL.certkeys auth2-jpake.c authfd.c] [authfile.c buffer.h dns.c kex.c kex.h key.c key.h monitor.c] [monitor_wrap.c myproposal.h packet.c packet.h pathnames.h readconf.c] [ssh-add.1 ssh-add.c ssh-agent.1 ssh-agent.c ssh-keygen.1 ssh-keygen.c] [ssh-keyscan.1 ssh-keyscan.c ssh-keysign.8 ssh.1 ssh.c ssh2.h] [ssh_config.5 sshconnect.c sshconnect2.c sshd.8 sshd.c sshd_config.5] [uuencode.c uuencode.h bufec.c kexecdh.c kexecdhc.c kexecdhs.c ssh-ecdsa.c] Implement Elliptic Curve Cryptography modes for key exchange (ECDH) and host/user keys (ECDSA) as specified by RFC5656. ECDH and ECDSA offer better performance than plain DH and DSA at the same equivalent symmetric key length, as well as much shorter keys. Only the mandatory sections of RFC5656 are implemented, specifically the three REQUIRED curves nistp256, nistp384 and nistp521 and only ECDH and ECDSA. Point compression (optional in RFC5656 is NOT implemented). Certificate host and user keys using the new ECDSA key types are supported. Note that this code has not been tested for interoperability and may be subject to change. feedback and ok markus@
Diffstat (limited to 'ssh.c')
-rw-r--r--ssh.c27
1 files changed, 18 insertions, 9 deletions
diff --git a/ssh.c b/ssh.c
index 44b570bf9..1cdfc58e3 100644
--- a/ssh.c
+++ b/ssh.c
@@ -1,4 +1,4 @@
-/* $OpenBSD: ssh.c,v 1.348 2010/08/16 04:06:06 djm Exp $ */
+/* $OpenBSD: ssh.c,v 1.349 2010/08/31 11:54:45 djm Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@@ -780,7 +780,7 @@ main(int ac, char **av)
sensitive_data.external_keysign = 0;
if (options.rhosts_rsa_authentication ||
options.hostbased_authentication) {
- sensitive_data.nkeys = 5;
+ sensitive_data.nkeys = 7;
sensitive_data.keys = xcalloc(sensitive_data.nkeys,
sizeof(Key));
@@ -789,25 +789,34 @@ main(int ac, char **av)
_PATH_HOST_KEY_FILE, "", NULL, NULL);
sensitive_data.keys[1] = key_load_private_cert(KEY_DSA,
_PATH_HOST_DSA_KEY_FILE, "", NULL);
- sensitive_data.keys[2] = key_load_private_cert(KEY_RSA,
+ sensitive_data.keys[2] = key_load_private_cert(KEY_ECDSA,
+ _PATH_HOST_ECDSA_KEY_FILE, "", NULL);
+ sensitive_data.keys[3] = key_load_private_cert(KEY_RSA,
_PATH_HOST_RSA_KEY_FILE, "", NULL);
- sensitive_data.keys[3] = key_load_private_type(KEY_DSA,
+ sensitive_data.keys[4] = key_load_private_type(KEY_DSA,
_PATH_HOST_DSA_KEY_FILE, "", NULL, NULL);
- sensitive_data.keys[4] = key_load_private_type(KEY_RSA,
+ sensitive_data.keys[5] = key_load_private_type(KEY_ECDSA,
+ _PATH_HOST_ECDSA_KEY_FILE, "", NULL, NULL);
+ sensitive_data.keys[6] = key_load_private_type(KEY_RSA,
_PATH_HOST_RSA_KEY_FILE, "", NULL, NULL);
PRIV_END;
if (options.hostbased_authentication == 1 &&
sensitive_data.keys[0] == NULL &&
- sensitive_data.keys[3] == NULL &&
- sensitive_data.keys[4] == NULL) {
+ sensitive_data.keys[4] == NULL &&
+ sensitive_data.keys[5] == NULL &&
+ sensitive_data.keys[6] == NULL) {
sensitive_data.keys[1] = key_load_cert(
_PATH_HOST_DSA_KEY_FILE);
sensitive_data.keys[2] = key_load_cert(
+ _PATH_HOST_ECDSA_KEY_FILE);
+ sensitive_data.keys[3] = key_load_cert(
_PATH_HOST_RSA_KEY_FILE);
- sensitive_data.keys[3] = key_load_public(
- _PATH_HOST_DSA_KEY_FILE, NULL);
sensitive_data.keys[4] = key_load_public(
+ _PATH_HOST_DSA_KEY_FILE, NULL);
+ sensitive_data.keys[5] = key_load_public(
+ _PATH_HOST_ECDSA_KEY_FILE, NULL);
+ sensitive_data.keys[6] = key_load_public(
_PATH_HOST_RSA_KEY_FILE, NULL);
sensitive_data.external_keysign = 1;
}